High-pressure synthesis, structural and complex magnetic properties of the ordered double perovskite Pb2NiReO6

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Abstract

The ordered double perovskite Pb2NiReO6 has been prepared at 6 GPa and temperatures ranging from 1273 to 1373 K. Its crystal structure determined by X-ray powder diffraction and selected area electron diffraction shows monoclinic symmetry with centrosymmetric space group I2/m (a = 5.6021(1) Å, b = 5.6235(1) Å, c = 7.9286(1) Å and β = 90.284°(1)). High angle annular dark field microscopy studies reveal the existence of compositional microdomains. The compound displays a re-entrant spin-glass transition from a ferrimagnetic ordering below TN ∼ 37 K between the Re+5 and Ni+3 (high spin configuration) magnetic sublattices to a spin-glass configuration. Magnetic field dependent magnetization measurements revealed wasp-waisted hysteresis loops at 5 K. These shaped features originate from the antiferromagnetic/ferromagnetic (AFM/FM) competing interactions. © The Royal Society of Chemistry 2014.

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Stoyanova-Lyubenova, T., Dos Santos-García, A. J., Urones-Garrote, E., Torralvo, M. J., & Alario-Franco, M. Á. (2014). High-pressure synthesis, structural and complex magnetic properties of the ordered double perovskite Pb2NiReO6. Dalton Transactions, 43(3), 1117–1124. https://doi.org/10.1039/c3dt52073k

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